Closed-loop approaches to control of a wake flow modeled by the Ginzburg-Landau equation
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Publication:849713
DOI10.1016/j.compfluid.2004.08.001zbMath1134.76336OpenAlexW2011300733MaRDI QIDQ849713
Publication date: 31 October 2006
Published in: Computers and Fluids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.compfluid.2004.08.001
Finite element methods applied to problems in fluid mechanics (76M10) Wakes and jets (76D25) Flow control and optimization for incompressible viscous fluids (76D55)
Related Items (6)
Filtered POD-based low-dimensional modeling of the 3D turbulent flow behind a circular cylinder ⋮ Control of Oscillations in Flow Problems Under Frequency Limitations ⋮ Adaptive stabilization based on passive and swapping identifiers for a class of uncertain linearized Ginzburg–Landau equations ⋮ Discrete-time model-based output regulation of fluid flow systems ⋮ Sensor and actuator placement trade-offs for a linear model of spatially developing flows ⋮ Feedback flow control employing local dynamical modelling with wavelets
Uses Software
Cites Work
- On some control problems in fluid mechanics
- Active control of flexible systems
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- Optimal control of cylinder wakes via suction and blowing
- Turbulence and the dynamics of coherent structures. I. Coherent structures
- Low-dimensional control of the circular cylinder wake
- Optimal control of vortex shedding using low-order models. Part I?open-loop model development
- Turbulence, Coherent Structures, Dynamical Systems and Symmetry
- Three-dimensional wake transition
- Performance of a linear robust control strategy on a nonlinear model of spatially developing flows
- The decay of stabilizability with Reynolds number in a linear model of spatially developing flows
- Feedback control of von Kármán vortex shedding behind a circular cylinder at low Reynolds numbers
- Quasi-periodic cylinder wakes and the Ginzburg–Landau model
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